首页> 外文期刊>Annals of Biomedical Engineering >A Biodegradable Slotted Tube Stent Based on Poly(l-lactide) and Poly(4-hydroxybutyrate) for Rapid Balloon-Expansion
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A Biodegradable Slotted Tube Stent Based on Poly(l-lactide) and Poly(4-hydroxybutyrate) for Rapid Balloon-Expansion

机译:基于聚(l-丙交酯)和聚(4-羟基丁酸酯)的可生物降解的带缝管支架,用于快速球囊扩张

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Safe vascular stent application requires rapid expansion of the stent to minimize the risk of procedural ischemia. While high expansion speeds can be achieved with metallic stents, they are not necessarily feasible with biodegradable polymeric stents due to the viscoelastic material behavior. This study reports on a novel biodegradable polymer blend material based on poly(l-lactide) (PLLA) and poly(4-hydroxybutyrate) (P4HB), and describes the mechanical properties and in vitro degradation behavior of a balloon-expandable slotted tube stent concept. The stent prototypes with nominal dimensions of 6.0 × 25 mm were manufactured by laser machining of solution cast PLLA/P4HB tubes (I.D. = 2.8 mm, d = 300 μm). The stents were expanded within 1 min by balloon inflation to 8 bar, after 5 min preconditioning in 37 °C water. Recoil and collapse pressure were 4.2% and 1.1 bar, respectively. During in vitro degradation collapse pressure initially increased to a maximum at 4 w and then decreased thereafter. After 48 w, molecular weight was decreased by 82%. In summary, the PLLA/P4HB slotted tube stents allowed for rapid balloon-expansion and exhibited adequate mechanical scaffolding properties suitable for a broad range of vascular and non-vascular applications.
机译:安全的血管支架应用要求支架快速扩张,以最大程度地减少程序性缺血的风险。尽管金属支架可以实现高膨胀速度,但由于粘弹性材料的性能,它们在生物可降解聚合物支架上不一定可行。这项研究报告了一种新型的基于聚(l-丙交酯)(PLLA)和聚(4-羟基丁酸酯)(P4HB)的可生物降解的聚合物共混材料,并描述了球囊扩张式开缝管支架的机械性能和体外降解行为概念。通过对溶液浇铸的PLLA / P4HB管(内径= 2.8 mm,d = 300μm)进行激光加工来制造公称尺寸为6.0×25 mm的支架原型。在37°C的水中预处理5分钟后,通过气囊充气将支架在1分钟内扩展至8 bar。后坐力和崩溃压力分别为4.2%和1.1 bar。在体外降解过程中,塌陷压力最初在4 w时增加到最大值,然后降低。 48 w后,分子量降低了82%。综上所述,PLLA / P4HB开缝管支架可使气球快速扩张,并具有足够的机械支架性能,适用于广泛的血管和非血管应用。

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